Dix D B, Thompson R C, Mackow E R, Chang F N
Arch Biochem Biophys. 1983 May;223(1):319-24. doi: 10.1016/0003-9861(83)90597-0.
The maintenance of accuracy in protein biosynthesis in amino acid-starved rel+ strains of Escherichia coli has been attributed to an effect of ppGpp on the accuracy of aa-tRNA selection by the ribosome. It has been determined that concentrations of ppGpp characteristic of those found in amino acid-starved cells have no effect on the rate of reaction of poly(U)-programmed ribosomes with either the cognate (Phe) or the near-cognate (Leu2) ternary complexes. Neither the rate of GTP hydrolysis, which signals selection of the ternary complex, nor the rate of peptide formation, which signals the acceptance of the aa-tRNA after proofreading, is affected by the nucleotide. The results indicate that the effect of ppGpp in maintaining the accuracy of protein biosynthesis in cells starved for an amino acid is not due to a direct effect on the rate constants for substrate selection by the ribosome.
在氨基酸饥饿的大肠杆菌rel+菌株中,蛋白质生物合成准确性的维持归因于ppGpp对核糖体选择氨酰-tRNA准确性的影响。已确定,氨基酸饥饿细胞中特有的ppGpp浓度对以聚(U)为模板的核糖体与同源(苯丙氨酸)或近同源(亮氨酸2)三元复合物的反应速率没有影响。既不影响作为三元复合物选择信号的GTP水解速率,也不影响作为校对后氨酰-tRNA接受信号的肽形成速率。结果表明,ppGpp在维持氨基酸饥饿细胞中蛋白质生物合成准确性方面的作用,并非直接影响核糖体选择底物的速率常数。